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The contribution of relative activation levels between populations of cells to network activity in a large-scale biologically realistic model of the hippocampus

机译:在海马大规模生物学现实模型中,细胞群体与网络活动之间的相对激活水平的贡献

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In previously published work, we showed the progress we've made towards creating a large-scale, biologically realistic model of the rat hippocampus, starting with the projection from entorhinal cortex (EC) to the dentate gyrus (DG). We created the model to help us study how the common components of neurobiological systems in mammals - large numbers of neurons with intricate, branching morphologies; active, non-linear membrane properties; nonuniform distributions throughout membrane surface of these non-linear conductances; non-uniform and topographic connectivity between pre- and post-synaptic neurons; and activity-dependent changes in synaptic function - combine and contribute to give a particular brain region its “neural processing” properties. In this work, we report on the results of a series of simulations we ran to test the role of feed-forward and feedback inhibition in the dentate gyrus. We find that a) the system shows rhythmic bands of activity only in the presence of feedback inhibition, b) that the frequency of rhythmicity increases with increasing amounts of feed-forward inhibition, c) that it decreases with increasing amounts of feedback inhibition, and d) that strong excitatory inputs appear to enhance and prolong the amount of rhythmicity in the system.
机译:在以前公布的工作中,我们展示了我们在创造大型大鼠海马的大规模生物学现实模型的进展,从Entorlinal Cortex(EC)到牙齿转象(DG)开始。我们创建了模型,以帮助我们研究哺乳动物神经生物学系统的共同组分 - 大量具有复杂的神经元,分支形态;活性,非线性膜特性;这些非线性电导膜表面的不均匀分布;在突触后神经元和突触后神经元之间的不均匀和地形连接;突触函数的活动依赖性变化 - 结合并有助于给出特定的大脑区域其“神经处理”属性。在这项工作中,我们报告了一系列模拟的结果,以测试前馈回合中的前馈和反馈抑制的作用。我们发现a)系统仅在反馈抑制的存在下显示有效的节奏带,B)随着饲料前抑制的量增加,C)的频率随着反馈抑制的增加而降低,并且d)强烈的兴奋输入似乎增强和延长了系统中节律的数量。

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